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动态乙酰化的着丝粒相关蛋白 HEC1 确保微管-着丝粒附着的准确性。

Dynamic acetylation of the kinetochore-associated protein HEC1 ensures accurate microtubule-kinetochore attachment.

机构信息

From the Division of Molecular and Cell Biophysics, Hefei National Science Center for Physical Sciences at the Microscale, University of Science and Technology of the China School of Life Sciences, Chinese Academy of Sciences Center of Excellence on Molecular Cell Sciences, Hefei 230027, China and.

the Keck Center for Cellular Dynamics and Organoids Plasticity, Morehouse School of Medicine, Atlanta, Georgia 30310.

出版信息

J Biol Chem. 2019 Jan 11;294(2):576-592. doi: 10.1074/jbc.RA118.003844. Epub 2018 Nov 8.

Abstract

Faithful chromosome segregation during mitosis is critical for maintaining genome integrity in cell progeny and relies on accurate and robust kinetochore-microtubule attachments. The NDC80 complex, a tetramer comprising kinetochore protein HEC1 (HEC1), NDC80 kinetochore complex component NUF2 (NUF2), NDC80 kinetochore complex component SPC24 (SPC24), and SPC25, plays a critical role in kinetochore-microtubule attachment. Mounting evidence indicates that phosphorylation of HEC1 is important for regulating the binding of the NDC80 complex to microtubules. However, it remains unclear whether other post-translational modifications, such as acetylation, regulate NDC80-microtubule attachment during mitosis. Here, using pulldown assays with HeLa cell lysates and site-directed mutagenesis, we show that HEC1 is a substrate of the lysine acetyltransferase Tat-interacting protein, 60 kDa (TIP60) and that TIP60-mediated acetylation of HEC1 is essential for accurate chromosome segregation in mitosis. We demonstrate that TIP60 regulates the dynamic interactions between NDC80 and spindle microtubules during mitosis and observed that TIP60 acetylates HEC1 at two evolutionarily conserved residues, Lys-53 and Lys-59. Importantly, this acetylation weakened the phosphorylation of the N-terminal HEC1(1-80) region at Ser-55 and Ser-62, which is governed by Aurora B and regulates NDC80-microtubule dynamics, indicating functional cross-talk between these two post-translation modifications of HEC1. Moreover, the TIP60-mediated acetylation was specifically reversed by sirtuin 1 (SIRT1). Taken together, our results define a conserved signaling hierarchy, involving HEC1, TIP60, Aurora B, and SIRT1, that integrates dynamic HEC1 acetylation and phosphorylation for accurate kinetochore-microtubule attachment in the maintenance of genomic stability during mitosis.

摘要

有丝分裂过程中忠实的染色体分离对于维持细胞后代的基因组完整性至关重要,这依赖于准确和强大的动粒-微管附着。NDC80 复合物由动粒蛋白 HEC1(HEC1)、NDC80 动粒复合物成分 NUF2(NUF2)、NDC80 动粒复合物成分 SPC24(SPC24)和 SPC25 组成的四聚体,在动粒-微管附着中发挥关键作用。越来越多的证据表明,HEC1 的磷酸化对于调节 NDC80 复合物与微管的结合很重要。然而,目前尚不清楚其他翻译后修饰,如乙酰化,是否在有丝分裂过程中调节 NDC80-微管附着。在这里,我们使用 HeLa 细胞裂解物的下拉测定和定点突变,表明 HEC1 是赖氨酸乙酰转移酶 Tat 相互作用蛋白 60kDa(TIP60)的底物,并且 TIP60 介导的 HEC1 乙酰化对于有丝分裂中染色体的正确分离是必不可少的。我们证明 TIP60 调节有丝分裂期间 NDC80 与纺锤体微管之间的动态相互作用,并观察到 TIP60 在两个进化上保守的残基 Lys-53 和 Lys-59 处乙酰化 HEC1。重要的是,这种乙酰化减弱了 Aurora B 调控的 N 端 HEC1(1-80)区域 Ser-55 和 Ser-62 的磷酸化,这调节了 NDC80-微管动力学,表明 HEC1 的这两种翻译后修饰之间存在功能交叉对话。此外,TIP60 介导的乙酰化可以被 Sirtuin 1(SIRT1)特异性逆转。总之,我们的结果定义了一个保守的信号级联,涉及 HEC1、TIP60、Aurora B 和 SIRT1,它整合了动态 HEC1 乙酰化和磷酸化,以在有丝分裂过程中维持基因组稳定性时实现准确的动粒-微管附着。

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